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A Zero Trust Hybrid Security and Safety Risk Analysis Method
Nikolaos Papakonstantinou
, Douglas L. Van Bossuyt
,
Joonas Linnosmaa
, Britta Hale
, Bryan O’Halloran
BA6403 Advanced cybersecurity and cryptography
Naval Postgraduate School
Research output
:
Contribution to journal
›
Article
›
Scientific
›
peer-review
38
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Citations (Scopus)
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Keyphrases
Risk Analysis Methods
100%
Safety Risk Analysis
100%
Security Risk Analysis
100%
Zero Trust
100%
Hybrid Securities
100%
Security Threats
66%
System Components
66%
Security-informed Safety
66%
Probability Estimates
66%
Model-based Systems Engineering
66%
Nuclear Reactor
33%
Interdependency
33%
Concept Design
33%
Cooling System
33%
Failure Mode
33%
Design Phase
33%
Safety Assessment
33%
Socio-technical
33%
Overall Safety
33%
Safety-critical Systems
33%
Risk-based Design
33%
Cyber-physical Systems
33%
Engineering Design
33%
Spent Fuel Pool
33%
Early Design Phases
33%
Systems Engineering
33%
Safety Probability
33%
Safety Function
33%
Model-based Design
33%
Early Identification
33%
System Reliability
33%
Design Strategy
33%
Security Assessment
33%
Improved System
33%
Risk Value
33%
Risk Assessment Framework
33%
Engineering Domains
33%
Security Design
33%
Dependency Model
33%
Risk Calculation
33%
Safety Design
33%
Security Environment
33%
Engineering Facilities
33%
Component Functions
33%
Executive Summary
33%
Emergent Behavior
33%
Safety Events
33%
American Society of Mechanical Engineers
33%
Systems Engineering Research
33%
New York City
33%
McGraw-Hill
33%
Design for Six Sigma
33%
International Design
33%
Global Security
33%
Failed Attacks
33%
Engineering
System Component
100%
Safety Risk
100%
Model-Based Systems Engineering
100%
Engineering
100%
Systems Engineering
100%
Interdependency
50%
Spent Fuels
50%
Cyber-Physical Systems
50%
Concept Design
50%
Redesign
50%
Safety Function
50%
Engineering Research
50%
System Reliability
50%
Technical Report
50%
Critical System
50%
Cooling System
50%
Nuclear Reactor
50%
Failure Mode
50%
Design Engineering
50%
Design Phase
50%
Computer Science
Risk Analysis
100%
Case Study
100%
Safety Critical Systems
50%
Cyber Physical Systems
50%
Design Phase
50%
Contributing Factor
50%
Risk Assessment Framework
50%
Domain Engineering
50%
Computer Hardware
50%
Security Environment
50%
Security Assessment
50%
Emergent Behavior
50%
Design Strategy
50%
Risk Calculation
50%
Security Design
50%
Technical Conferences
50%
Benchmarking
50%
Interdependency
50%
Engineering Research
50%
Technical Report
50%
Quality Management
50%
INIS
safety
100%
hybrids
100%
security
100%
risk analysis
100%
engineering
63%
design
63%
risks
36%
probability
27%
conferences
27%
values
9%
failures
9%
comparative evaluations
9%
assessments
9%
information
9%
surveys
9%
environment
9%
nuclear reactors
9%
cost
9%
losses
9%
spent fuels
9%
reliability
9%
humans
9%
risk assessment
9%
cooling systems
9%
computers
9%
engineers
9%
fuel pools
9%
avoidance
9%
new york city
9%